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Investigation of array layout of tidal stream turbines on energy extraction efficiency

机译:潮流涡轮机排汽效率的研究。

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摘要

A two-dimensional model based on OpenTidalFarm is applied to simulate tidal stream flow around turbines. The model is governed by shallow water equations and is able to optimize the layout of the deployed turbine array in terms of maximizing the energy outputs. Three turbine array layouts including two structured layouts (regular and staggered) and one unstructured layout (optimized) are simulated to investigate the effect of turbine layouts on energy extraction. The present study shows that more energy could be extracted when lateral spacing decreases and longitudinal spacing increases within the same domain, namely the effective turbine layout is to deploy more turbines in the first row to extract energy from undisturbed tidal stream, while larger longitudinal spacing will make it possible for tidal stream to recover more before reaching the next turbines row. Taking the tidal stream turbines array around Zhoushan Islands as a case study, results show that the optimized layout can extract 106.8% energy of that extracted by the regular and staggered layout for a full tide in the same marine area. Additionally, the turbine array has a great influence on tidal stream velocities immediately behind the array and has little effect on far-field wake flow.
机译:应用基于OpenTidalFarm的二维模型来模拟涡轮机周围的潮流流。该模型由浅水方程式控制,并且能够在最大化能量输出方面优化已部署涡轮机阵列的布局。模拟了三种涡轮机阵列布局,包括两种结构化布局(规则和交错)和一种非结构化布局(优化),以研究涡轮机布局对能量提取的影响。本研究表明,当在同一区域内横向间距减小而纵向间距增大时,可以提取更多的能量,即有效的涡轮机布局是在第一排部署更多的涡轮机,以从不受干扰的潮汐流中提取能量,而更大的纵向间距将使潮汐流有可能在到达下一个涡轮机行之前恢复更多。以舟山群岛周围的潮流轮机为例,结果表明,在同一海域内,优化布局可以提取规则和交错布局提取的能量的106.8%,从而可以完全潮汐。另外,涡轮机阵列对紧接在阵列后面的潮汐流速度有很大的影响,而对远场尾流影响很小。

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